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Transported Joint Probability Density Function Simulation of Turbulent Spray Flames Combined with a Spray Flamelet Model Using a Transported Scalar Dissipation Rate

机译:结合运输标量耗散率的湍流喷雾火焰的运输联合概率密度函数模拟与喷雾小火焰模型

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Numerical simulations of a turbulent ethanol/air spray flame are performed using a combined formulation of a joint gas mixture fraction-enthalpy probability density function (PDF) and a spray flamelet model, where the scalar dissipation rate of the mixture fraction is described with a transport equation. Spray evaporation is included in the flamelet model through the pre-calculation of counterflowing laminar spray flames with a detailed reaction mechanism of 38 species and 337 elementary reactions for ethanol/air combustion. A transport equation for the mean scalar dissipation rate of the mixture fraction is derived, taking into account the spray evaporation. The computed results are compared with the experimental data provided by A. Masri, University of Sydney, Australia. All major spray flame characteristics, including the Sauter mean diameter, the droplet velocity, and its turbulent fluctuations as well as gas temperature, generally show good agreement with experiments. Different models for the scalar dissipation rate of the mixture fraction are not significantly different for the flame under consideration except for inside the chemical reaction zone, where the new model shows some improvement compared to the experiment.
机译:使用联合气体混合物馏分-焓概率密度函数(PDF)和喷雾小火焰模型的组合公式,对湍流的乙醇/空气喷雾火焰进行了数值模拟,其中混合物馏分的标量耗散率用输运来描述方程。通过对逆流层流喷雾火焰进行预先计算,喷雾蒸发包括在小火焰模型中,该过程具有38种物质的详细反应机理和337种乙醇/空气燃烧的基本反应。考虑到喷雾蒸发,得出了混合级分的平均标量耗散率的输运方程。将计算结果与澳大利亚悉尼大学A. Masri提供的实验数据进行比较。所有主要的喷雾火焰特征,包括索特平均直径,液滴速度及其湍流波动以及气体温度,都与实验基本吻合。除了化学反应区内,所考虑的火焰的混合物分数标量耗散率的不同模型没有显着差异,与实验相比,新模型显示出一些改进。

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